A Hybrid Genetic Algorithm for Multi-Trip Green Capacitated Arc Routing Problem in the Scope of Urban Services

Greenhouse gases (GHG) are the main reason for the global warming during the past decades. On the other hand, establishing a well-structured transportation system will yield to create least cost-pollution. This paper addresses a novel model for the multi-trip Green Capacitated Arc Routing Problem (G...

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Main Authors: Erfan Babaee Tirkolaee, Ali Asghar Rahmani Hosseinabadi, Mehdi Soltani, Arun Kumar Sangaiah, Jin Wang
Format: Article
Language:English
Published: MDPI AG 2018-04-01
Series:Sustainability
Subjects:
Online Access:http://www.mdpi.com/2071-1050/10/5/1366
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spelling doaj-518b00662fce44739b7643f62bdf935e2020-11-24T20:55:05ZengMDPI AGSustainability2071-10502018-04-01105136610.3390/su10051366su10051366A Hybrid Genetic Algorithm for Multi-Trip Green Capacitated Arc Routing Problem in the Scope of Urban ServicesErfan Babaee Tirkolaee0Ali Asghar Rahmani Hosseinabadi1Mehdi Soltani2Arun Kumar Sangaiah3Jin Wang4Department of Industrial Engineering, Mazandaran University of Science and Technology, 47166-85635 Babol, IranYoung Researchers and Elite Club, Ayatollah Amoli Branch, Islamic Azad University, 46351-43358 Amol, IranDepartment of Industrial and Mechanical Engineering, Qazvin Branch, Islamic Azad University, 34185-1416 Qazvin, IranSchool of Computing Science and Engineering, Vellore Institute of Technology (VIT), 632014 Vellore, IndiaSchool of Computer & Communication Engineering, Changsha University of Science & Technology, 410004 Changsha, ChinaGreenhouse gases (GHG) are the main reason for the global warming during the past decades. On the other hand, establishing a well-structured transportation system will yield to create least cost-pollution. This paper addresses a novel model for the multi-trip Green Capacitated Arc Routing Problem (G-CARP) with the aim of minimizing total cost including the cost of generation and emission of greenhouse gases, the cost of vehicle usage and routing cost. The cost of generation and emission of greenhouse gases is based on the calculation of the amount of carbon dioxide emitted from vehicles, which depends on such factors as the vehicle speed, weather conditions, load on the vehicle and traveled distance. The main applications of this problem are in municipalities for urban waste collection, road surface marking and so forth. Due to NP-hardness of the problem, a Hybrid Genetic Algorithm (HGA) is developed, wherein a heuristic and simulated annealing algorithm are applied to generate initial solutions and a Genetic Algorithm (GA) is then used to generate the best possible solution. The obtained numerical results indicate that the proposed algorithm could present desirable performance within a suitable computational run time. Finally, a sensitivity analysis is implemented on the maximum available time of the vehicles in order to determine the optimal policy.http://www.mdpi.com/2071-1050/10/5/1366green capacitated arc routinghybrid genetic algorithmgreenhouse gasessensitivity analysismultiple trips
collection DOAJ
language English
format Article
sources DOAJ
author Erfan Babaee Tirkolaee
Ali Asghar Rahmani Hosseinabadi
Mehdi Soltani
Arun Kumar Sangaiah
Jin Wang
spellingShingle Erfan Babaee Tirkolaee
Ali Asghar Rahmani Hosseinabadi
Mehdi Soltani
Arun Kumar Sangaiah
Jin Wang
A Hybrid Genetic Algorithm for Multi-Trip Green Capacitated Arc Routing Problem in the Scope of Urban Services
Sustainability
green capacitated arc routing
hybrid genetic algorithm
greenhouse gases
sensitivity analysis
multiple trips
author_facet Erfan Babaee Tirkolaee
Ali Asghar Rahmani Hosseinabadi
Mehdi Soltani
Arun Kumar Sangaiah
Jin Wang
author_sort Erfan Babaee Tirkolaee
title A Hybrid Genetic Algorithm for Multi-Trip Green Capacitated Arc Routing Problem in the Scope of Urban Services
title_short A Hybrid Genetic Algorithm for Multi-Trip Green Capacitated Arc Routing Problem in the Scope of Urban Services
title_full A Hybrid Genetic Algorithm for Multi-Trip Green Capacitated Arc Routing Problem in the Scope of Urban Services
title_fullStr A Hybrid Genetic Algorithm for Multi-Trip Green Capacitated Arc Routing Problem in the Scope of Urban Services
title_full_unstemmed A Hybrid Genetic Algorithm for Multi-Trip Green Capacitated Arc Routing Problem in the Scope of Urban Services
title_sort hybrid genetic algorithm for multi-trip green capacitated arc routing problem in the scope of urban services
publisher MDPI AG
series Sustainability
issn 2071-1050
publishDate 2018-04-01
description Greenhouse gases (GHG) are the main reason for the global warming during the past decades. On the other hand, establishing a well-structured transportation system will yield to create least cost-pollution. This paper addresses a novel model for the multi-trip Green Capacitated Arc Routing Problem (G-CARP) with the aim of minimizing total cost including the cost of generation and emission of greenhouse gases, the cost of vehicle usage and routing cost. The cost of generation and emission of greenhouse gases is based on the calculation of the amount of carbon dioxide emitted from vehicles, which depends on such factors as the vehicle speed, weather conditions, load on the vehicle and traveled distance. The main applications of this problem are in municipalities for urban waste collection, road surface marking and so forth. Due to NP-hardness of the problem, a Hybrid Genetic Algorithm (HGA) is developed, wherein a heuristic and simulated annealing algorithm are applied to generate initial solutions and a Genetic Algorithm (GA) is then used to generate the best possible solution. The obtained numerical results indicate that the proposed algorithm could present desirable performance within a suitable computational run time. Finally, a sensitivity analysis is implemented on the maximum available time of the vehicles in order to determine the optimal policy.
topic green capacitated arc routing
hybrid genetic algorithm
greenhouse gases
sensitivity analysis
multiple trips
url http://www.mdpi.com/2071-1050/10/5/1366
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